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宋人对辽朝的畏惧心理和“燕云”情结 被引量:10
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作者 杨小敏 《史学集刊》 CSSCI 北大核心 2008年第5期107-112,共6页
北宋建立及其后来对中原的统一,使宋与辽形成了并峙的格局,从此以后抗辽、御辽成为宋朝的主要对外国策。不同时期,宋辽关系舒紧发生变化,但对于辽,屈辱和畏惧始终是宋人难以排遣的主要心态,并影响着宋朝的对辽政策。
关键词 北宋 御辽 “燕云” “海上之盟”
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考古学视野下的燕云十六州——以鄚州城为中心
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作者 何岁利 《故宫博物院院刊》 北大核心 2023年第7期4-17,152,共15页
2019-2020年,考古工作者对“燕云十六州”城址之一的鄚州城遗址进行了勘探与发掘,发现城墙、护城河、道路遗址等,并出土了砖、瓦、陶瓷器等相关遗物。研究表明,鄚州城遗址营建年代可能在唐末五代至北宋初年,城址性质可能为五代、北宋时... 2019-2020年,考古工作者对“燕云十六州”城址之一的鄚州城遗址进行了勘探与发掘,发现城墙、护城河、道路遗址等,并出土了砖、瓦、陶瓷器等相关遗物。研究表明,鄚州城遗址营建年代可能在唐末五代至北宋初年,城址性质可能为五代、北宋时期莫(鄚)州鄚县城址,金、元时期莫(鄚)亭县城址。通过发掘,对古代鄚州城的营建年代、历史地理环境、沿革变迁以及汉唐时期鄚县治所变迁与原因等进行了初步分析与研究。鄚州城遗址的发掘为冀中地区同类城址以及“燕云十六州”相关城址的考古研究提供了新资料。 展开更多
关键词 燕云十六州 唐末五代 鄚州城 考古研究
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Mineralogical feature and geological significance of muscovites from the Longyuanba Indosinian and Yanshannian two-mica granites in the eastern Nanling Range 被引量:4
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作者 TAO JiHua LI WuXian +1 位作者 CAI YuanFeng CEN Tao 《Science China Earth Sciences》 SCIE EI CAS 2014年第6期1150-1157,共8页
Emplacement P-T condition estimations using granites are important for understanding metamorphic and erosional processes of orogenic belt.Granites are widespread in South China and a majority of them are peraluminous.... Emplacement P-T condition estimations using granites are important for understanding metamorphic and erosional processes of orogenic belt.Granites are widespread in South China and a majority of them are peraluminous.Particularly,over 91%of the Indosinian granites exposed in the region are peraluminous in composition.It is extremely hard to determine the pressure of intrusion of these peraluminous granites due to the absence of amphibole,a good mineral barometer commonly identified in metaluminous granites.Muscovite is a common mineral in peraluminous granites,certain kind of it could be used as a mineral barometer to constrain the emplacement pressure of peraluminous granites.In this paper,results of petrographic and geochemical studies of muscovites from the Indosinian and early Yanshanian two-mica granites at the Longyuanba in the eastern Nanling Range are reported.Based on petrographic studies,the primary muscovite can be discriminated from the secondary muscovites.Muscovites from the Indosinian two-mica granites are enriched in Ti,Al,Mg,and Na,and depleted in Fe and Mn.Geochemically,these muscovites were considered as primary,whereas those from the Yanshanian two-mica granites fall into the area of secondary muscovite on discrimination diagrams.Barometer estimations show that pressures calculated for primary muscovites are accurate,but those calculated for secondary muscovites are overestimated.The average pressure of emplacement of the Longyuanba Indosinian two-mica granites is 5.9 kbar,corresponding to^19 km in depth,suggesting that the Indosinian granitic magmas were probably generated by partial melting of a thickened crust root in a compressional tectonic setting. 展开更多
关键词 emplacement depth MUSCOVITE peraluminous granites Longyuanba complex Nanling Range
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Petrogenesis of early Yanshanian highly evolved granites in the Longyuanba area,southern Jiangxi Province:Evidence from zircon U-Pb dating,Hf-O isotope and whole-rock geochemistry 被引量:25
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作者 TAO JiHua LI WuXian +1 位作者 LI XianHua CEN Tao 《Science China Earth Sciences》 SCIE EI CAS 2013年第6期922-939,共18页
Early Yanshanian(Jurassic) granitoids are widespread in the Nanling Range,South China.Whereas large granitic batholiths commonly crop out in the center of the Nanling Range(corresponding geographically to the central ... Early Yanshanian(Jurassic) granitoids are widespread in the Nanling Range,South China.Whereas large granitic batholiths commonly crop out in the center of the Nanling Range(corresponding geographically to the central and northern parts of Guangdong Province),many small stocks occur in the southern part of Jiangxi Province.Most of the small stocks are associated closely with economically significant rare-metal deposits(W,Sn,Nb,Ta).Here we report the results for biotite granites and two-mica granites from three Yanshanian stocks of the Longyuanba complex.LA-ICPMS U-Pb dating of zircon yields an age of 156.1±2.1 Ma for Xiaomubei biotite granite,and U-Pb zircon dating using SIMS yields an age of 156.7±1.2 Ma for Longyuanba-Chengjiang biotite granite and 156.4±1.3 Ma for Jiangtoudong two-mica granite.Biotite granites are silica-rich(SiO 2 =70%-79%),potassic(K 2 O/Na 2 O>1.9),and peraluminous(ASI=1.05-1.33).Associated samples are invariably enriched in Rb,Th,Pb and LREE,yet depleted in Ba,Nb,Sr,P and Ti,and their REE pattern shows a large fractionation between LREE and HREE((La/Yb) N =10.7-13.5) and a pronounced Eu negative anomaly(δEu=0.28-0.41).Two-mica granite samples are also silica-rich(SiO 2 =75%-79%),potassic(K 2 O/Na 2 O>1.2),and peraluminous(ASI=1.09-1.17).However,in contrast to the biotite granites,they are more enriched in Rb,Th,Pb and extremely depleted in Ba,Nb,Sr,P and Ti,and exhibit nearly flat((La/Yb) N =0.75-1.08) chondrite-normalized REE patterns characterized by strong Eu depletion(δEu=0.02-0.04) and clear tetrad effect(TE 1.3 =1.10-1.14).Biotite granites and two-mica granties have comparable Nd isotopic signatures,and their εNd(t) are concentrated in the 13.0 to 9.6 and 11.5 to 7.7 respectively.Their zircon Hf-O isotopes of both also show similarity(biotite granites:εHf(t)= 10.8-7.9,δ 18 O=7.98‰-8.89‰ and εHf(t)= 13.8 to 9.1,δ 18 O=8.31‰-10.08‰;two-mica granites:εHf(t)= 11.3 to 8.0,δ 18 O=7.91‰-9.77‰).The results show that both biotite and two-mica granites were derived mainly from sedimentary source rocks with a minor contribution from mantle-derived materials.In spite of some S-type characteristics,the biotite granites were formed by fractional crystallization of I-type magma and assimilation of peraluminous sedimentary rocks during their ascent to the surface.Therefore,they belong to highly fractionated I-type granites.Two-mica granites exhibit a tetrad effect in their REE patterns,but share the same isotopic features with the biotite granites,suggesting that they are highly fractionated I-type granites as well.Their Lanthanide tetrad effects may be attributed to the hydrothermal alteration by magmatic fluids that have suffered degassing at late stages.Granitic magmas undergoing fractional crystallization and wall-rock assilimation can generate highly evolved granites with no REE tetrad effect in the uni-phase system.However,in the late-stage of magmatic evolution in the multi-phase system(i.e.,magmatic-hydrothermal system),these magmas also can lead to the highly evolved granites exhibiting mew-shaped REE pattern characterized by tetrad effect as the consequence of melt-fluid and fluid-vapor fractionation,and the resultant autometasomatism.We thus suggest that the REE pattern exhibiting tetrad effect feature is an important indicator of rare metal mineralization in the early Yanshanian time in southern China,implying the metamorphism of the ore fluid. 展开更多
关键词 highly evolved tetrad effect granite early Yanshanian southern Jiangxi Province
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